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An exploration of load-shifting potential in real in-situ heat-pump/ gas-boiler hybrid systems

机译:实际原位热泵/燃气-锅炉混合系统中负荷转移潜力的探索

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Monitoring data from two hybrid air-source heat-pump/gas-boiler systems were used to explore the systems' potential for energy flexibility, i.e. the potential for shifting electrical load in response to grid requirements while maintaining acceptable performance in the overall hybrid system. In both cases, a significant proportion of the heat-pump load could potentially be shifted to the gas boiler with only a modest increase in the overall energy consumption, provided certain operational conditions were met. Furthermore, under these operational conditions, it is possible to estimate this additional energy consumption for a given system from simple heat output, and gas and electricity consumption data. This provides a potential basis for groups of similar systems equipped with smart technology to offer flexibility to the grid, while minimising the resulting energy penalty by choosing to use the most appropriate systems at any given time with respect to their operating conditions at that time. In addition, this type of flexibility means that the thermal comfort within the dwelling remains unaffected since overall heating requirement is met at all times by one of the two heating sub-systems. Practical application: The ability to shift or shed electrical load in response to grid requirements is likely to become a significant, commercially incentivised aspect of building energy systems in the future, to mitigate the stress on electrical grids at times of peak consumption. For domestic systems, aggregation will be a key factor, requiring 'smart' systems to provide real-time information to potential aggregators or grid operators. This article explores what type of system information may be necessary in the case of hybrid heat-pump/gas-boiler systems if loads are to be shifted from the heat-pump to the gas-boiler element, while minimising the resulting energy penalties.
机译:来自两个混合式空气源热泵/燃气锅炉系统的监测数据被用于探索系统的能源灵活性潜力,即响应电网需求而转移电力负荷的潜力,同时保持整个混合系统的可接受性能。在这两种情况下,只要满足某些运行条件,总热量消耗仅适度增加,就可以将很大一部分热泵负荷转移到燃气锅炉上。此外,在这些操作条件下,可以根据简单的热量输出以及燃气和电力消耗数据来估算给定系统的此额外能耗。这为配备智能技术的类似系统组提供了潜在的基础,可为电网提供灵活性,同时通过选择在任何给定时间根据其当时的运行状况使用最合适的系统,从而最大程度地减少能源损失。另外,这种灵活性意味着住所内的热舒适性不会受到影响,因为两个加热子系统之一始终可以满足总体加热要求。实际应用:响应电网需求而转移或释放电力负载的能力很可能会成为未来建筑能源系统在商业上受到激励的重要方面,以减轻高峰期用电时对电网的压力。对于家用系统,聚合将是关键因素,要求“智能”系统向潜在的聚合器或电网运营商提供实时信息。本文探讨了如果要将负载从热泵转移到燃气锅炉元件上的情况,则在混合式热泵/燃气锅炉系统中可能需要哪种类型的系统信息,同时最大程度地减少了能源损失。

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